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  1. Progetti

Scalable Parallel and distributed Astrophysical Codes for Exascale

Progetto
In Astrophysics and Cosmology (A&C) today, High Performance Computing (HPC)-based numerical simulations are outstanding instruments for scientific discovery. They represent essential tools and theoretical laboratories able to investigate, interpret and understand the physical processes behind the observed sky. For these laboratories, the efficient and effective exploitation of exascale computing capabilities is essential. Exascale systems, however, are expected to have a heterogeneous unprecedented architectural complexity, with a significant impact on simulation codes. Consequently, the proposed SPACE CoE aims to extensively re-engineer the target codes to engage with new computational solutions and adopt innovative programming paradigms, software solutions, and libraries. SPACE aims to foster the reuse and sharing of algorithms and software components in the A&C application domain. The proposed SPACE CoE will address this action through co-design activities that bring together scientists, code developers, HPC experts, HW manufacturers and SW developers, advancing lighthouse exascale A&C applications, codes, services and know-how promoting the use of upcoming exascale and post-exascale computing capabilities. In addition, SPACE will address the high-performance data analysis of the data torrent produced by exascale A&C simulation applications, also with machine-learning and visualization tools. The deployment of applications running on different platforms will be facilitated by federating capabilities focusing on code repositories and data sharing, and integrating European astrophysical communities around exascale computing by adopting software and data standards and interoperability protocols.
  • Dati Generali
  • Aree Di Ricerca
  • Pubblicazioni

Dati Generali

Partecipanti (6)

MIGNONE Andrea   Responsabile scientifico  
CAMERA Stefano   Partecipante  
DE LILLO Filippo   Partecipante  
MASERA Massimo   Partecipante  
MASSARO Francesco   Partecipante  
PACE Francesco   Partecipante  

Referenti (2)

LEONE Marco Giovanni   Amministrativo  
LO IACONO Cristiano   Amministrativo  

Dipartimenti coinvolti

FISICA   Principale  

Tipo

HEU Research and Innovation action

Finanziatore

EUROPEAN COMMISSION
Ente Finanziatore

Capofila

Università degli Studi di TORINO

Partner (14)

BARCELONA SUPERCOMPUTING CENTER CENTRO NACIONAL DE SUPERCOMPUTACION - BSC CNS
Bull International SAS (Bisas)
CINECA
CNRS DELEGATION CENTRE-EST
E4 COMPUTER ENGINEERING S.P.A.
ENGINSOFT SPA
Heidelberg Institute for Theoretical Studies HITS gGmbH
IDRYMA TECHNOLOGIAS KAI EREVNAS - FOUNDATION FOR RESEARCH AND TECHNOLOGYHELLAS
INAF - Istituto Nazionale di Astrofisica - SEDE CENTRALE
JOHANN WOLFGANG GOETHE - UNIVERSITATFRANKFURT AM MAIN
KU LEUVEN
LUDWIG MAXIMILLIANS UNIVERSITAET MEUNCHEN
UNIVERSITY OF OSLO
VSB - TECHNICAL UNIVERSITY OF OSTRAVA - VSB - TU Ostrava

Contributo Totale (assegnato) Ateneo (EURO)

345.625€

Periodo di attività

Gennaio 1, 2023 - Dicembre 31, 2026

Durata progetto

48 mesi

Aree Di Ricerca

Settori (3)


PE9_1 - Solar physics – the Sun and the heliosphere - (2022)

Settore FIS/05 - Astronomia e Astrofisica

SCIENZE MATEMATICHE, CHIMICHE, FISICHE - Cosmologia e Universo

Parole chiave

astrofisica multimessaggera
No Results Found

Pubblicazioni

Pubblicazioni (3)

A 4th-order accurate finite volume method for ideal classical and special relativistic MHD based on pointwise reconstructions 
JOURNAL OF COMPUTATIONAL PHYSICS
2024
Articolo
Open Access
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A fourth-order accurate finite volume scheme for resistive relativistic MHD 
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
2024
Articolo
Open Access
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Probing the role of self-gravity in clouds impacted by AGN-driven winds 
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
2024
Articolo
Open Access
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